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首页> 外文期刊>Acta biomaterialia >Pre-crosslinked polymeric collagen in 3-D models of mechanically stiff tissues: Blended collagen polymer hydrogels for rapid layer fabrication.
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Pre-crosslinked polymeric collagen in 3-D models of mechanically stiff tissues: Blended collagen polymer hydrogels for rapid layer fabrication.

机译:机械刚性组织的3-D模型中的预交联聚合物胶原蛋白:混合胶原蛋白聚合物水凝胶,可快速制造层。

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摘要

Currently one factor hindering the development of collagen hydrogel constructs for tissue engineering is the mismatch between initial cellularity and mechanical strength. The main advantage of collagen hydrogel tissue constructs is their ability to support interstitially seeded cells. However, cells are sensitive to their environment, in particular, substrate stiffness, which cannot easily be replicated within hydrogels without cytotoxic cross-linking treatment. In this study, pre-crosslinked polymeric collagen fibrils are introduced as a starting material, thereby avoiding artificial cross-linking. Shear aggregation of this material in solution results in fibril alignment, but cell addition is only possible when polymeric collagen is blended with its monomeric counterparts to slow the aggregation of collagen fibrils. The hydrogel can then be brought to physiological collagen density by plastic compression. Interstitially seeded fibroblasts were supported for 14days. Although compression of blended gels resulted in some cell death due to increased rate of fluid expulsion, not normally seen in conventional collagen hydrogels, the surviving cell population recovers during subsequent culture. Importantly, the compression process can be controlled and customized to limit cell damage. This is the first report of native polymeric collagen used in a tissue engineering context, for the rapid production of a stiff collagen-cell constructs.
机译:当前,阻碍用于组织工程的胶原水凝胶构建体发展的一个因素是初始细胞密度和机械强度之间的不匹配。胶原蛋白水凝胶组织构建体的主要优点是它们支持间质接种细胞的能力。然而,细胞对它们的环境特别是底物刚度敏感,如果没有细胞毒性交联处理,就不能轻易地在水凝胶中复制底物刚度。在这项研究中,将预交联的聚合物胶原原纤维作为起始材料引入,从而避免了人工交联。该材料在溶液中的剪切聚集导致原纤维排列,但仅当将聚合胶原蛋白与其单体对应物混合以减慢胶原原纤维的聚集时,才可能添加细胞。然后可以通过塑性压缩使水凝胶达到生理胶原密度。间质播种的成纤维细胞被支持14天。尽管由于增加的液体排出速率导致混合凝胶的压缩导致某些细胞死亡(这在常规胶原蛋白水凝胶中通常不可见),但是存活的细胞群体在随后的培养过程中得以恢复。重要的是,可以控制和定制压缩过程以限制细胞损伤。这是用于组织工程环境的天然聚合胶原蛋白的首次报道,用于快速生产坚硬的胶原细胞构建体。

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